Abstract:
A lens assembly for a camera, a camera lens system, and a camera system. The lens assembly has an optical path from an object side to an image side, the lens assembly comprising a first lens group having a first optical axis and comprising a first primary lens; an aperture stop; and a light redirecting member, wherein the light redirecting member is arranged between the first lens group and the aperture stop such that the optical path comprises a first optical path segment and a second optical path segment, wherein the first optical path segment and the second optical path segment form an angle larger than 30 degrees, and the lens assembly having a horizontal field of view in the range from 5 degrees to 135 degrees.
Abstract:
The present invention relates to a particle or pharmaceutical composition comprising one, more particles or a suspension of same or different particles comprising a degradable compound and an alpha emitting radionuclide and/or a radionuclide generating alpha emitting daughter. A particle comprising CaCO 3 , the alpha emitting radionuclide 224 Ra, and a 224 Ra radionuclide progeny is in particular disclosed. The particles are beneficial for use in the treatment of cancer.
Abstract:
The present invention relates to a sampling device (1) for withdrawing a plurality of samples from a fluid container. The sampling device (1) comprises a support member (2) for mounting into a port of a fluid container and a plurality of rotatable inserts (6a, 6b, 6c, 6d, 6e), each insert having a through conduit forming an eccentric aperture (38) within the distal end surface (37) of insert, the through conduit (23) being alignable and misalignable with a respective through passage (5) of the support member by rotating the insert (6) relative to the support member (2). In another aspect, the present invention relates to a method of withdrawing a sample from a fluid container and the use of cylindrical elements to that effect.
Abstract:
The present invention relates to radiopharmaceutical compositions comprising the mother nuclide 224 Ra, its daughter nuclide 212 Pb, and a complexing agent that complexes with the daughter nuclide. The use of targeted chelate scavengers for 224 Ra daughter nuclide opens up the possibility for using 224 Ra based solutions for medical treatments.
Abstract:
A method of balancing a heating system (150) is described, wherein the heating system comprises: a flow system comprising a supply flow line (60) and a return flow line (70), a heat source (55) and at least a first pump (10) coupled to the flow system and pumping fluid through the heat source to the flow system, and a plurality of hydraulic lines ( L 1 -L n ) between the supply flow line and the return flow line, at least a number of which have a heating element ( H 1 -H n ) with a dedicated balancing valve ( V 1 - V n ) and optionally a regulation valve ( W 1 -W 2 ). The method comprises the steps of: A) carrying out one or more measurements for each of the hydraulic lines by opening one hydraulic line only and determining a flow rate ( q ) through the pump and a pressure difference ( Δρ ) across the pump, B) establishing a hydraulic model for at least a part of the heating system based on the determined flow rate and pressure difference from at least two measurements from step A), and at least one additional measurement for at least two hydraulic lines from step A), C) specifying a desired flow rate ( q ̅ j ) for each of the hydraulic lines, and D) adjusting one or more of the dedicated balancing valves ( V 1 -V n ) in order to meet the desired flow rate ( q ̅ j ) for each of the hydraulic lines by using the hydraulic model.
Abstract:
The present disclosure relates to peptides derived from IL-1R antagonist protein (IL1RA) for treatment of diabetic nephropathy and for use in treating diabetic nephropathy.
Abstract:
A wind turbine blade comprising: an aerodynamic shell body with a suction side shell part and a pressure side shell part that extends in a longitudinal direction between a root and a tip and in a transverse direction between a leading edge and a trailing edge, and a de-icing system comprising: a number of heating layers including a first heating layer, the number of heating layers each comprising electrically conductive fibres configured and arranged to extend substantially in the longitudinal direction of the wind turbine blade along a longitudinal section of the aerodynamic shell body to provide resistive heating to the longitudinal section of the aerodynamic shell body; a number of metallic patches including a first metallic patch, the number of metallic patches being arranged to contact at least the number of heating layers; and a conductor cable that is electrically connected to the number of metallic patches and further is configured for electrically connecting to a power source; wherein the electrically conductive fibres of the number of heating layers are configured for, upon receiving electrical power from the conductor cable via the number of metallic patches, supplying resistive heating to an outer side of the wind turbine blade so as to de-ice the wind turbine blade.
Abstract:
A method of manufacturing a radome for encasing an antenna system, preferably for marine use, is described. The method comprising the steps of: providing one or more moulds for manufacturing a structural main body of the radome or parts of the structural main body of the radome, each of the one or more moulds comprising a mould cavity, injecting a foamed polymer material into the mould cavity or mould cavities of the one or more moulds to form the structural main body of the radome or parts of the structural main body of the radome, and optionally connecting the parts of the structural main body of the radome to form the main body of the radome. Further, a radome for encasing an antenna system, preferably for marine use, is described. The radome comprises a structural main body, which is made from a foamed polymer material.
Abstract:
A training manikin for practicing CPR and a training system comprising such training manikin is disclosed. The training manikin comprises: one or more sensors for measuring one or more parameters indicative of the performance of a trainee during use of the training manikin in a training session; and a wireless communication module adapted to establish and concurrently maintaining wireless communication links with a plurality of client devices, including establishing a first wireless communication link with a first client device of the plurality of client devices and establishing a second wireless communication link with a second client device of the plurality of client devices. The wireless communication module is adapted to transmit training data based on the one or more parameters to the first client device using the first wireless communication link and to the second 0client device using the second wireless communication link. The wireless communication module is further adapted to receive first device data from the first client device using the first wireless communication link.